Paolo Cotogno
Biographic Data
| ID | 5236966 |
|---|---|
| NAME | Paolo Cotogno |
| GIVEN NAMES | Paolo |
| FAMILY NAME | Cotogno |
| SIGNATURE | COTOGNO P |
| VERIFIED | No |
| TOTAL WORKS | 1 |
| TOTAL CITATIONS | 7 |
| AUTHOR COUNT | 1 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2003 |
| LATEST PUBLICATION YEAR | 2003 |
| H-INDEX | 1 |
Hypercomputation and the Physical Church‐Turing Thesis
A version of the Church‐Turing Thesis states that every effectively realizable physical system can be defined by Turing Machines (‘Thesis P’); in this formulation the Thesis appears an empirical, more than a logico‐mathematical, proposition. We review the main approaches to computation beyond Turing definability (‘hypercomputation’): supertask, non‐well‐founded, analog, quantum, and retrocausal computation. These models depend on infinite computa…
Hypercomputation and the Physical Church‐Turing Thesis
A version of the Church‐Turing Thesis states that every effectively realizable physical system can be defined by Turing Machines (‘Thesis P’); in this formulation the Thesis appears an empirical, more than a logico‐mathematical, proposition. We review the main approaches to computation beyond Turing definability (‘hypercomputation’): supertask, non‐well‐founded, analog, quantum, and retrocausal computation. These models depend on infinite computa…
Hypercomputation and the Physical Church‐Turing Thesis
A version of the Church‐Turing Thesis states that every effectively realizable physical system can be defined by Turing Machines (‘Thesis P’); in this formulation the Thesis appears an empirical, more than a logico‐mathematical, proposition. We review the main approaches to computation beyond Turing definability (‘hypercomputation’): supertask, non‐well‐founded, analog, quantum, and retrocausal computation. These models depend on infinite computa…
Algebra over a field (1 works) · Algorithm (1 works) · Cellular Automata and Applications (1 works) · Computability, Logic, AI Algorithms (1 works) · Computation (1 works) · Computer Science (1 works) · Description number (1 works) · Halting problem (1 works) · Interpretation (philosophy) (1 works) · Mathematics (1 works)